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1.
Chinese Journal of Medical Education Research ; (12): 1160-1164, 2021.
Article in Chinese | WPRIM | ID: wpr-908977

ABSTRACT

Objective:To explore the application of the Simodont dental trainer in preclinical manual dexterity training for dental students of different grades, and to discuss its effect by quantitatively evaluating their practice results.Methods:The evaluation was conducted among 118 students in the Department of Stomatology, Shantou University Medical College from Batch 2015 to Batch 2018. Each student had five different manual dexterity modules for training. Each module had three levels of difficulty and was required to be completed in 30 minutes. The assessment index included Target, Leeway Bottom and Sides, Container Bottom and Sides, which was provided by the Simodont dental trainer. The operating time (in seconds), the displacement of the dental hand pieces and the dental mirrors (in meters) were simultaneously recorded. SPSS 25.0 was used for statistical analysis.Results:For the index Target, Leeway Bottom and Sides, Container Bottom and Sides, the results showed that there was a statistical difference between students who passed pre-clinical training and who did not take the professional course ( P < 0.001). For the index Target, differences were showed among students from different grades in all modules ( P < 0.001). Conclusion:The circle module, channel module, hollow-circle module and cross-module in the Simodont dental trainer have sensitivity to discriminate the manual dexterity of different levels of dental students. The further assessment of the discrimination of the manual dexterity is required for assume-block module. The Simodont dental trainer can quantitatively measure the manual dexterity of dental students, which is important for the quantitative evaluation of dental preclinical education.

2.
Chinese Journal of Medical Education Research ; (12): 907-911, 2019.
Article in Chinese | WPRIM | ID: wpr-797454

ABSTRACT

For displaying the three-dimensional (3D) digital model of teeth, we constructed a digital learning platform of "oral anatomy and physiology-tooth morphology" based on the WeChat small program of smart phones integrating teaching resources like texts, pictures, videos, three-dimensional animation and others. The textual content of tooth morphology was edited according to the Chinese textbook Oral Anatomy and Physiology (seventh edition) of the People's Health Publishing House and Wheeler's Dental Anatomy, Physiology and Occlusion. After photographing and cone beam CT scanning the tooth in vitro, JPEG file of tooth contour and DICOM file of tooth cross section were obtained. Continuous tomographic dynamic pictures of the tooth and 3D videos was presented by adopting software of Photoshop CS6, CS 3D imaging (affiliated simple software of cone beam CT), Snagit, Video Editor and Aijianji. Following steps of WeChat official website to register, develop, compose code, upgrade pictures and texts, submit to be verified and release, small program "Dental Anatomy Learning Platform" was completed and put into use. According to the survey, 90.3%(93) users believed the small program is helpful to learn Oral Anatomy and Physiology, especially in deepening the understanding of the tooth morphology and structure; 96.1%(99) users considered that the small program can be added to the classroom as a supplement, but it can't replace the textbook totally. The development of "Dental Anatomy Learning Platform" will provide methodological guidance for the development and integration of various dental teaching resources on the internet.

3.
Chinese Journal of Medical Education Research ; (12): 907-911, 2019.
Article in Chinese | WPRIM | ID: wpr-790257

ABSTRACT

For displaying the three-dimensional ( 3D ) digital model of teeth , we constructed a digital learning platform of "oral anatomy and physiology-tooth morphology" based on the WeChat small program of smart phones integrating teaching resources like texts , pictures , videos , three-dimensional animation and others. The textual content of tooth morphology was edited according to the Chinese textbook Oral Anatomy and Physiology (seventh edition) of the People's Health Publishing House and Wheeler's Dental Anatomy, Physiology and Occlusion. After photographing and cone beam CT scanning the tooth in vitro, JPEG file of tooth contour and DICOM file of tooth cross section were obtained. Continuous tomographic dynamic pictures of the tooth and 3D videos was presented by adopting software of Photoshop CS6, CS 3D imaging (affiliated simple software of cone beam CT), Snagit, Video Editor and Aijianji. Following steps of WeChat official website to register, develop, compose code, upgrade pictures and texts, submit to be verified and release, small program "Dental Anatomy Learning Platform" was completed and put into use. According to the survey, 90.3%(93) users believed the small program is helpful to learn Oral Anatomy and Physiology, especially in deepening the understanding of the tooth morphology and structure;96.1%( 99 ) users considered that the small program can be added to the classroom as a supplement, but it can't replace the textbook totally . The development of "Dental Anatomy Learning Platform" will provide methodological guidance for the development and integration of various dental teaching resources on the internet.

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